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附睾的结构与功能。

Structure and function of the epididymis.

作者信息

Cosentino M J, Cockett A T

出版信息

Urol Res. 1986;14(5):229-40. doi: 10.1007/BF00256565.

Abstract

Testicular spermatozoa are functionally immature in that they cannot fertilize ova. It was first demonstrated by Young that spermatozoa undergo certain changes as they migrate through the epididymis. He proposed that spermatozoa ripen during epididymal transit. It is now known that specific maturational changes occur in spermatozoa during epididymal transit which result in their developing the ability to fertilize ova. Concomitant with this functional maturity are changes in spermatozoal morphology, motility, chemistry, permeability, density and metabolism. It is apparent that in some way not understood these changes are necessary for sperm to achieve the ability to complete the fertilization process. When these mechanisms are understood, we may be able to effectively treat conditions such as necrospermia or abnormally low sperm motility. Furthermore, with the development of the hamster-egg penetration test a "new" type of male infertility has become evident in recent years; the inability of otherwise normal sperm to penetrate an ovum. It is during epididymal transit that this ability is normally acquired. Thus, any insight into how sperm attain the capacity to penetrate an ovum could lead to an effective treatment of patients whose sperm do not have this ability. In addition, the epididymis holds significant promise as the site of action for a male contraceptive. Thus, it is the purpose of this review to describe the structure and function of the mammalian epididymis with particular emphasis on the factors regulating sperm maturation.

摘要

睾丸精子在功能上尚未成熟,因为它们无法使卵子受精。扬首先证明,精子在通过附睾迁移过程中会发生某些变化。他提出精子在附睾运输过程中会成熟。现在已知,精子在附睾运输过程中会发生特定的成熟变化,从而使其具备使卵子受精的能力。与这种功能成熟相伴的是精子形态、活力、化学性质、通透性、密度和代谢的变化。显然,以某种尚未被理解的方式,这些变化对于精子获得完成受精过程的能力是必要的。当理解了这些机制后,我们或许就能有效治疗诸如死精症或精子活力异常低下等病症。此外,随着仓鼠卵穿透试验的发展,近年来一种“新型 ”男性不育症变得明显;即其他方面正常的精子无法穿透卵子。而精子通常是在附睾运输过程中获得这种能力的。因此,任何关于精子如何获得穿透卵子能力的见解都可能导致对精子缺乏这种能力的患者进行有效治疗。此外,附睾作为男性避孕药的作用部位具有巨大潜力。因此,本综述的目的是描述哺乳动物附睾的结构和功能,并特别强调调节精子成熟的因素。

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